AIDS: a challenge for osteopathic physicians.
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Biomedical subjects
Publications and source records attributed to L Calabrese.
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The complete amino acid sequence of Cu,Zn superoxide dismutase from sheep erythrocytes has been determined. The sequence is very similar to that of the bovine enzyme, having the same number of residues (151) and only two substitutions in the 'hypervariable' region (residues 17-30). The 5 overall substitutions confer a positive charge on the sheep enzyme at neutral pH (pI approximately equal to 8). This charge is localized outside the active site region. The catalytic efficiency of the sheep enzyme is 15% less than that of the cow enzyme, confirming the hypothesis that the enzyme activity is related to the concentration of positive surface charge near the active site channel.
The two Type 1 (blue) copper-binding sites of caeruloplasmin were spectroscopically differentiated by the kinetic analysis of the e.p.r. spectra during the redox cycle. One blue copper, with a hyperfine splitting constant (A parallel) of 6.8 mT, which was rapidly reduced, was not reoxidized by oxygen, whereas it was reoxidized by H2O2. The other blue copper (A parallel = 5.8 mT), which was reduced slowly, was rapidly reoxidized by either oxygen or H2O2. A conformational change of the Type 2 copper was concomitant with the fast reduction of Type 1 copper, whereas its reduction occurred during the slow phase. This sequence of events was reversed in the reoxidation step, that is, the Type 2 copper reappeared rapidly as the species with altered conformation and reverted to the symmetry typical of the native state in the slow phase. The specific reaction of a blue-copper site with the H2O2 can tentatively be related to the established ability of caeruloplasmin to prevent 'oxidative' attack of proteins and lipids.
A Cu,Zn superoxide dismutase was purified for the first time from an elasmobranch species (Prionace glauca) and showed the following differences with respect to other animal superoxide dismutases. The enzyme displays a low isoelectric point. The enzyme activity is unusually independent of ionic strength. The isolated enzyme has 30% of its copper in the reduced state.
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Binding of CO to single cuprous (half-apo) or cupric (met-apo) copper of hemocyanin is investigated by a new method which allows estimation of the total amount of CO bound to hemocyanin. Pure half-apo preparations could not be obtained with the molluscan hemocyanins from Helix pomatia and Octopus vulgaris, and a residual fraction of sites with coupled copper is always present. However, the determination of CO bound to the protein before and after addition of H2O2, used to oxidize selectively single copper sites, reveals that CO binds to half-apo Cu(I), and is released upon oxidation of copper to met-apo Cu(II). Binding of CO to half-apo is not associated to luminescence, proving that luminescence of native carboxyhemocyanin demands the presence of a second cuprous copper in the site. In addition, analysis of data indicates that the residual amount of coupled copper sites in partially copper-depleted hemocyanin is underestimated by the residual O2-copper band measured at 340 nm in air, while faithfully quantitated by the residual luminescence in the presence of CO. A distribution of the copper left in the site of three partially copper-depleted hemocyanins is depicted.
Co(II) derivatives of Cu,Zn-superoxide dismutase having cobalt substituted for the copper (Co,Zn-superoxide dismutase and Co,Co-superoxide dismutase) were studied by optical and EPR spectroscopy. EPR and electronic absorption spectra of Co,Zn-superoxide dismutase are sensitive to solvent perturbation, and in particular to the presence of phosphate. This behaviour suggests that cobalt in Co,Zn-superoxide dismutase is open to solvent access, at variance with the Co(II) of the Cu,Co-superoxide dismutase, which is substituted for the Zn. Phosphate binding as monitored by optical titration is dependent on pH with an apparent pKa = 8.2. The absorption spectrum of Co,Zn-superoxide dismutase in water has three weak bands in the visible region (epsilon = 75 M-1 X cm-1 at 456 nm; epsilon = 90 M-1 X cm-1 at 520 nm; epsilon = 70 M-1 X cm-1 at 600 nm) and three bands in the near infrared region, at 790 nm (epsilon = 18 M-1 X cm-1), 916 nm (epsilon = 27 M-1 X cm-1) and 1045 nm (epsilon = 25 M-1 X cm-1). This spectrum is indicative of five-coordinate geometry. In the presence of phosphate, three bands are still present in the visible region but they have higher intensity (epsilon = 225 M-1 X cm-1 at 544 nm; epsilon = 315 M-1 X cm-1 at 575 nm; epsilon = 330 M-1 X cm-1 at 603 nm), whilst the lowest wavelength band in the near infrared region is at much lower energy, 1060 nm (epsilon = 44 M-1 X cm-1). The latter property suggests a tetrahedral coordination around the Co(II) centre. Addition of 1 equivalent of CN- gives rise to a stable Co(II) low-spin intermediate, which is characterized by an EPR spectrum with a highly rhombic line shape. Formation of this CN- complex was found to require more cyanide equivalents in the case of the phosphate adduct, suggesting that binding of phosphate may inhibit binding of other anions. Titration of the Co,Co-derivative with CN- provided evidence for magnetic interaction between the two metal centres. These results substantiate the contention that Co(II) can replace the copper of Cu,Zn-superoxide dismutase in a way that reproduces the properties of the native copper-binding site.
10-28% of the patients with chronic coeliac disease develop a second malignancy, such as non-Hodgkin's lymphomas, particularly of the histiocytic type, and adenocarcinomas. The second tumor may arise in the intestinal tract or in other organs. We describe here a patient who developed a tartrate-resistant, acid phosphatase-positive, hairy-cell leukemia after a history of chronic coeliac disease. In the literature, no similar case has been described as yet.
The reaction of hydrogen peroxide with ox or sheep ceruloplasmin leads to approximately 10% increase of the optical absorption band at 610 nm and of the Type 1 EPR signal. No inactivation or denaturation of the protein is apparent up to 15 H2O2 molar excess. Oxygen is able to restore about 50% of the Type 1 copper absorption in ascorbate-reduced ceruloplasmin, while the other half is recovered after addition of H2O2. It appears that H2O2 undergoes a specific redox reaction with ceruloplasmin, which reveals a fraction of the total copper to be present in the native protein as reduced copper. This fraction is apparently Type 1 copper, while Type 2 is not affected by H2O2.
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Cu,Zn superoxide dismutase (EC 1.15.1.1) from bovine erythrocyte was found to enhance Tb(III) luminescence in a way suggestive of the presence of specific sites binding calcium. Binding of Ca(II) had no effect on the enzyme activity. However, the low-temperature EPR spectra of the enzyme-bound copper were modified into a more axial line shape by Ca(II) and Tb(III), but not by other cations. This effect was not observed by room-temperature EPR and was interpreted as being due to a long-range conformational effect on the copper-binding site occurring on freezing when specific charged amino acid side-chains are neutralized. This interpretation is supported by similar effects observed with anions that neither have inhibitory effect on the activity nor bind to the copper. These results indicate the presence of specific electrostatic interactions of the protein moiety of Cu,Zn superoxide dismutase and the occurrence of changes of the symmetry of the copper site when the protein is frozen under certain conditions.